Pre-launch Switching fabric build in progress ASN AS-TBD Fabric MTU 9000 PeeringDB ix/TBD
GLIXGREAT LAKES INTERNET EXCHANGE

Regional IXP Carrier neutral Midwest fabric

Community-governed, carrier-neutral Internet peering for the Great Lakes

GLIX keeps regional IP traffic inside the Upper Midwest basin, linking municipal fiber networks, regional wireless providers, content distribution networks, academic backbones, and enterprise autonomous systems without tromboning through remote commercial transit hubs.

Average provisioning lead time: TBD business days

Fabric snapshot

Pre-launch
Autonomous system
AS-TBD
Switching capacity
TBD Tbps
Connected peers
TBD ASNs
Facilities
TBD PoPs
Interface MTU
9000 · jumbo frame native
Governance
TBD

Every value marked this way is a placeholder awaiting a confirmed figure. See PLACEHOLDERS.md for the full list.

Aggregate fabric telemetry

Illustrative · not live

Ingress Egress 95th percentile

2.0T1.5T 1.0T0.5T0 00:0004:0008:00 12:0016:0020:00

The shape above is a representative daily curve, drawn in the page. It is not a live measurement. Once the fabric is in production this panel links to the public graphing system.

Public graphing endpoint: TBD Looking glass and diagnostics →

Why a regional exchange

Architectural rationale and regional impact

Engineered to remove inefficient Midwest detours and the regional transit cost that comes with them.

Eliminating traffic trombones

Without a local layer 2 exchange, intra-Midwest packets often route hundreds of miles to a distant hub before returning to an adjacent network in the same metro. GLIX bridges those regional autonomous systems directly, shedding the unnecessary round-trip latency.

Intra-regional RTT TBD ms Trombone reduction TBD%

Bilateral and route server automation

Members gain multilateral reach through redundant route servers with RPKI origin validation, IRR prefix filtering, and standard BGP communities. Direct private sessions are supported in parallel across dedicated 802.1Q VLANs.

Route server participation TBD% Max prefixes TBD

Cost recovery, not margin

GLIX operates at cost. Port fees are structured purely to recover the facility co-location footprint and optical switch capital. There are no recurring fees or markup on meet-me-room cross-connects.

10GE $TBD/mo 100GE $TBD/mo

Carrier-neutral optical ring

Primary carrier hotels across the region are planned to be linked over geodiverse dark fiber paths using coherent DWDM transponders, so participants at any node exchange traffic inside one unified layer 2 broadcast domain.

Inter-facility ring TBD Protection TBD

Connected participants

Directory opens at launch

The live roster is published on the participant directory page and mirrored to PeeringDB. Until the first ports are turned up, the table below shows the columns the directory will carry rather than member data.

ParticipantASNPort capacity Peering policyPrimary facilityRoute server
Awaiting first participantAS-TBD TBDTBDTBDTBD
Awaiting first participantAS-TBD TBDTBDTBDTBD
Awaiting first participantAS-TBD TBDTBDTBDTBD

Provisioning

Turn-up procedure

A straightforward workflow that follows North American IXP interconnection practice.

01

LOA and CFA request

Submit your ASN, technical peering contact, and port capacity requirement. The NOC issues a Letter of Authorization and Customer Facility Assignment.

Turnaround: TBD

02

Order the cross-connect

Present the issued LOA and CFA to your colocation facility's meet-me-room operator and order single-mode fiber patched to the GLIX cage.

Optics: 10GBASE-LR / 100GBASE-LR4

03

Subnet addressing

GLIX assigns dual-stack IP addresses from the exchange block. Configure the interface parameters and MTU 9000 on your border router.

IPv4 TBD · IPv6 TBD

04

Establish BGP

Bring up sessions with both route servers. Filter checks validate RPKI origin and IRR objects before your announcements reach the fabric.

See the route server guide

Bring your network onto the fabric

Questions about link aggregation, jumbo frame negotiation, high-speed handoffs, or private bilateral VLANs go straight to the engineers who run the exchange.